• Photonics Research
  • Vol. 11, Issue 5, 765 (2023)
Xuqing Sun1、2, Hongyao Liu1, Liwen Jiang1、2, Ruxue Wei1、2, Chang Wang1、2, Xue Wang1、2, Xiaojuan Sun1、2, Fei Wang1、2, Xinchao Lu1、*, Andrey B. Evlyukhin3、4, and Chengjun Huang1、2、5
Author Affiliations
  • 1Institute of Microelectronics of Chinese Academy of Sciences, Beijing 100029, China
  • 2University of Chinese Academy of Sciences, Beijing 100049, China
  • 3Institute of Quantum Optics, Leibniz University, Hannover 30167, Germany
  • 4e-mail: a.b.evlyukhin@daad-alumni.de
  • 5e-mail: huangchengjun@ime.ac.cn
  • show less
    DOI: 10.1364/PRJ.484400 Cite this Article Set citation alerts
    Xuqing Sun, Hongyao Liu, Liwen Jiang, Ruxue Wei, Chang Wang, Xue Wang, Xiaojuan Sun, Fei Wang, Xinchao Lu, Andrey B. Evlyukhin, Chengjun Huang. Directional surface plasmon polariton scattering by single low-index dielectric nanoparticles: simulation and experiment[J]. Photonics Research, 2023, 11(5): 765 Copy Citation Text show less
    References

    [1] A. Pors, M. G. Nielsen, T. Bernardin, J. C. Weeber, S. I. Bozhevolnyi. Efficient unidirectional polarization controlled excitation of surface plasmon polaritons. Light Sci. Appl., 3, e197(2014).

    [2] A. Baron, E. Devaux, J. C. Rodier, J. P. Hugonin, E. Rousseau, C. Genet, T. W. Ebbesen, P. Lalanne. Compact antenna for efficient and unidirectional launching and decoupling of surface plasmons. Nano Lett., 11, 4207-4212(2011).

    [3] W. J. Yao, S. Liu, H. M. Liao, Z. Li, C. W. Sun, J. J. Chen, Q. H. Gong. Efficient directional excitation of surface plasmons by a single-element nanoantenna. Nano Lett., 15, 3115-3121(2015).

    [4] T. J. Huang, L. Z. Yin, J. Y. Liu, F. Y. Han, P. K. Liu. High-efficiency directional excitation of spoof surface plasmons by periodic scattering cylinders. Opt. Lett., 44, 3972-3975(2019).

    [5] A. B. Evlyukhin, C. Rainhardt, E. Evlyukhina, B. N. Chichkov. Asymmetric and symmetric local surface-plasmon-polariton excitation on chains of nanoparticles. Opt. Lett., 34, 2237-2239(2009).

    [6] F. J. Rodríguez-Fortuño, G. Marino, P. Ginzburg, D. O’Connor, A. Martinez, G. A. Wurtz, A. V. Zayats. Near-field interference for the unidirectional excitation of electromagnetic guided modes. Science, 340, 328-330(2013).

    [7] A. B. Evlyukhin, S. I. Bozhevolnyi. Surface plasmon polariton guiding by chains of nanoparticles. Laser Phys. Lett., 3, 396-400(2006).

    [8] I. P. Radko, V. S. Volkov, J. Beermann, A. B. Evlyukhin, A. Boltasseva, S. I. Bozhevolnyi. Plasmonic metasurfaces for waveguiding and field enhancement. Laser Photon. Rev., 3, 575-590(2009).

    [9] S. I. Bozhevolnyi, V. S. Volkov, E. Devaux, J. Y. Laluet, T. W. Ebbesen. Channel plasmon subwavelength waveguide components including interferometers and ring resonators. Nature, 440, 508-511(2006).

    [10] A. I. Kuznetsov, A. E. Miroshnichenko, H. F. Yuan, J. B. Zhang, B. L. Yanchuk. Magnetic light. Sci. Rep., 2, 134(2012).

    [11] A. B. Evlyukhin, S. Novikov, U. Zywietz, R. L. Eriksen, C. Reinhardt, S. I. Bozhevolnyi, B. N. Chichkov. Demonstration of magnetic dipole resonances of dielectric nanospheres in the visible region. Nano Lett., 12, 3749-3755(2012).

    [12] A. B. Evlyukhin, C. Reinhardt, A. Seidel, B. L. Yanchuk, B. N. Chichkov. Optical response features of Si nanoparticle arrays. Phys. Rev. B, 82, 045404(2010).

    [13] A. Garcia-Etxarri, R. Gomez-Medina, L. S. Froufe-Perez, C. Lopez, J. J. Saenz. Strong magnetic response of submicron silicon particles in the infrared. Opt. Express, 19, 4815-4826(2011).

    [14] V. E. Babicheva, A. B. Evlyukhin. Multipole lattice effects in high refractive index metasurfaces. J. Appl. Phys., 129, 040902(2021).

    [15] W. Liu, Y. S. Kivshar. Generalized Kerker effects in nanophotonics and meta-optics. Opt. Express, 26, 13085-13105(2018).

    [16] I. Staude, A. Miroshnichenko, M. Decker, N. T. Fofang, S. Liu, E. Gonzales, J. Dominguez, T. S. Luk, D. N. Neshev, I. Brener, Y. Kivshar. Tailoring directional scattering through magnetic and electric resonances in subwavelength silicon nanodisks. ACS Nano, 7, 7824-7832(2013).

    [17] I. Sinev, F. Komissarenko, I. Iorsh, D. Permyakov, A. Samusev, A. Bogdanov. Steering of guided light with dielectric nanoantennas. ACS Photon., 7, 680-686(2020).

    [18] D. Sikdar, W. Cheng, M. Premaratne. Optically resonant magneto-electric cubic nanoantennas for ultra-directional light scattering. J. Appl. Phys., 117, 083101(2015).

    [19] S. Person, M. Jain, Z. Lapin, J. J. Saenz, G. Wicks, L. Novotny. Demonstration of zero optical backscattering from single nanoparticles. Nano Lett., 13, 1806-1809(2013).

    [20] C. Ma, J. Yan, Y. Huang, G. Yang. Directional scattering in a germanium nanosphere in the visible light region. Adv. Opt. Mater., 5, 1700761(2017).

    [21] A. B. Evlyukhin, S. I. Bozhevolnyi. Resonant unidirectional and elastic scattering of surface plasmon polaritons by high refractive index dielectric nanoparticles. Phys. Rev. B, 92, 245419(2015).

    [22] I. S. Sinev, A. A. Bogdanov, F. E. Komissarenko, K. S. Frizyuk, M. I. Petrov, I. S. Mukhin, S. V. Makarov, A. K. Samusev, A. V. Lavrinenko, I. V. Iorsh. Chirality driven by magnetic dipole response for demultiplexing of surface waves. Laser Photon. Rev., 11, 1700168(2017).

    [23] L. Kang, H. Bao, D. H. Werner. Interference-enhanced optical magnetism in surface high-index resonators: a pathway toward high-performance ultracompact linear and nonlinear meta-optics. Photon. Res., 7, 1296-1305(2019).

    [24] J. Zhou, A. Panday, Y. T. Xu, X. Chen, L. Chen, C. G. Ji, L. J. Guo. Visualizing Mie resonances in low-index dielectric nanoparticles. Phys. Rev. Lett., 120, 253902(2018).

    [25] M. Abdelrahman, C. Rockstuhl, I. Fernandez-Corbaton. Broadband suppression of backscattering at optical frequencies using low permittivity dielectric spheres. Sci. Rep., 7, 14762(2017).

    [26] M. Abdelrahman, H. Saleh, I. Fernandez-Corbaton, J. M. Geffrin, M. I. Abdelrahman. Experimental demonstration of spectrally broadband Huygens sources using low-index spheres. APL Photon., 4, 020802(2019).

    [27] Y. N. Zhang, S. R. Chen, D. J. Hu, Y. X. Sicong. Coloring solar cells with simultaneously high efficiency by low-index dielectric nanoparticles. Nano Energy, 62, 682-690(2019).

    [28] A. B. Evlyukhin, C. Reinhardt, E. Evlyukhin, B. N. Chichkov. Multipole analysis of light scattering by arbitrary-shaped nanoparticles on a plane surface. J. Opt. Soc. Am. B, 30, 2589-2598(2013).

    [29] C. F. Bohren, D. R. Huffman. Absorption and Scattering of Light by Small Particles(2008).

    [30] D. J. Lockwood, M. R. Luo. Rayleigh and Mie scattering. Encyclopedia of Color Science and Technology, 1097-1107(2016).

    [31] http://lumerical.com/. http://lumerical.com/

    [32] A. Drezet, C. Genet. Imaging surface plasmons: from leaky waves to far-field radiation. Phys. Rev. Lett., 110, 213901(2013).

    [33] A. B. Evlyukhin, B. N. Chichkov. Multipole decompositions for directional light scattering. Phys. Rev. B, 100, 125415(2019).

    [34] X. Sun, H. Liu, L. Jiang, R. Wei, X. Wang, C. Wang, X. Lu, C. Huang. Detecting a single nanoparticle by imaging the localized enhancement and interference of surface plasmon polaritons. Opt. Lett., 44, 5707-5710(2019).

    Xuqing Sun, Hongyao Liu, Liwen Jiang, Ruxue Wei, Chang Wang, Xue Wang, Xiaojuan Sun, Fei Wang, Xinchao Lu, Andrey B. Evlyukhin, Chengjun Huang. Directional surface plasmon polariton scattering by single low-index dielectric nanoparticles: simulation and experiment[J]. Photonics Research, 2023, 11(5): 765
    Download Citation